首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Use of laboratory anaerobic digesters to simulate the increase of treatment rate in full-scale high nitrogen content sewage sludge and co-digestion biogas plants
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Use of laboratory anaerobic digesters to simulate the increase of treatment rate in full-scale high nitrogen content sewage sludge and co-digestion biogas plants

机译:使用实验室厌氧消化池模拟全氮高含量污水污泥和共消化沼气厂的处理率提高

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The aim of this study was to assess the effect of increasing feedstock treatment rate on the performance of full-scale anaerobic digestion using laboratory-scale reactors with digestate and feedstock from full-scale digesters. The studied nitrogen-containing feedstocks were i) a mixture of industrial by-products and pig slurry, and ii) municipal sewage sludge, which digestion was studied at 41 and 52 degrees C, respectively. This study showed the successful reduction of hydraulic retention times from 25 and 20 days to around 15 days, which increased organic loading rates from 2 to 3.5 kg volatile solids (VS)/m(3) d and 4 to 6 kg VS/m(3) d. As a result, the optimum retention time in terms of methane production and VS removal was 10-15% lower than the initial in the full-scale digesters. Accumulation of acids during start-up of the co-digestion reactor was suggested to be connected to the high ammonium nitrogen concentration and intermediate temperature of 41 degrees C. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是评估使用实验室规模的反应器,消化液和来自大型消化池的原料,提高原料处理速率对全面厌氧消化性能的影响。所研究的含氮原料为:i)工业副产品和猪粪的混合物,以及ii)城市污水污泥,分别在41和52摄氏度下研究了消化过程。这项研究表明,水力停留时间从25天和20天成功减少到15天左右,有机负载率从2千克挥发性固体(VS)/ m(3)d和4千克VS / m(6千克)增加3)d。结果,就甲烷生成和VS去除而言,最佳保留时间比全尺寸蒸煮器的初始保留时间低10-15%。建议在共消化反应器启动期间积累的酸与较高的铵态氮浓度和41摄氏度的中间温度有关。(C)2016 Elsevier Ltd.保留所有权利。

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